2008Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

Novel measurement of Mueller matrix for cells

Yubo Li, Wenjian Jia, Ruoyu Chen, Hao Wang, Minghua Wang, Jianyi Yang

Open publisher page 0 citations

Abstract

In this work, we propose a method to measure the Mueller matrix of biological tissues rapidly. Firstly, the effect of biological tissues on the incident light can be represented as absorption, phase retardance and depolarization. This paper defines four parameters as absorption coefficient, phase retardance coefficient, depolarization proportion and azimuth of incident light, respectively. Secondly, we decompose the incident light into two parts: one is totally depolarized, the other is absorbed and its phase is retarded. The two processes are characterized by two corresponding Mueller submatrixes. Then two Mueller submatrixes are derived based on the relation between the Stokes vectors of incident light and output light. Moreover, on the basis of a linear combination of the two Mueller submatrixes, we obtain the Mueller matrix of biological tissues, which contains the unknown parameters. Lastly, we employ the pellicle cell of magnolia for the sample and acquisition of it's polarization images. Then this paper applies the method to construct calculation model from the image data. And just 6 intensity measurements are needed to calculate the four parameters.

About this research paper

What this paper is about

In this work, we propose a method to measure the Mueller matrix of biological tissues rapidly. Firstly, the effect of biological tissues on the incident light can be represented as absorption, phase retardance and depolarization. This paper defines four parameters as absorption coefficient, phase retardance coefficient, depolarization proportion and azimuth of incident light, respectively. Secondly, we decompose the incident light into two parts: one is totally depolarized, the other is absorbed and its phase is retarded. The two processes are characterized by two corresponding Mueller submatrixes. Then two Mueller submatrixes are derived based on the relation between the Stokes vectors of incident light and output light. Moreover, on the basis of a linear combination of the two Mueller submatrixes, we obtain the Mueller matrix of biological tissues, which contains the unknown parameters. Lastly, we employ the pellicle cell of magnolia for the sample and acquisition of it's polarization images. Then this paper applies the method to construct calculation model from the image data. And just 6 intensity measurements are needed to calculate the four parameters.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this work, we propose a method to measure the Mueller matrix of biological tissues rapidly. Firstly, the effect of biological tissues on the incident light can be represented as absorption, phase retardance and depolarization. This paper defines four parameters as absorption coefficient, phase retardance coefficient, depolarization proportion and azimuth of incident light, respectively. Secondly, we decompose the incident light into two parts: one is totally depolarized, the other is absorbed and its phase is retarded. The two processes are characterized by two corresponding Mueller submatrixes. Then two Mueller submatrixes are derived based on the relation between the Stokes vectors of incident light and output light. Moreover, on the basis of a linear combination of the two Mueller submatrixes, we obtain the Mueller matrix of biological tissues, which contains the unknown parameters. Lastly, we employ the pellicle cell of magnolia for the sample and acquisition of it's polarization images. Then this paper applies the method to construct calculation model from the image data. And just 6 intensity measurements are needed to calculate the four parameters.

Key concepts: Mueller calculus, Ray, Optics, Polarization (electrochemistry), Azimuth, Light intensity, Attenuation coefficient, Light scattering

Related papers

Back to paper searchBrowse research topicsOriginal source
Novel measurement of Mueller matrix for cells — Research Paper | ScholarLens